García Gregorio, Atilhan Mert, Aparicio Santiago
Department of Chemistry, University of Burgos , 09001 Burgos, Spain.
Department of Chemical Engineering, Qatar University , P.O. Box 2713, Doha, Qatar.
J Phys Chem B. 2015 Sep 24;119(38):12455-63. doi: 10.1021/acs.jpcb.5b05187. Epub 2015 Sep 10.
Beyond carbon allotropes, other nanostructures such as fullerene B80 are attracting a growing interest due to their potential applications. The use of new materials based on fullerene B80 is still in a premature stage; however many of these applications would require the use of B80 in solution. This paper reports an unprecedented density functional theory (DFT) analysis on the interaction mechanism between B80 and two choline-based ionic liquids as a first insight for the fullerene B80 solvation by ionic liquids. The analysis of properties such as binding energies, charge distributions or intermolecular interactions shed light on the main features, which should govern interaction between ionic liquids and fullerene B80. In addition, the optimization of systems composed by six ionic pairs around a fullerene B80 has supplied some information about the first solvation shell at the molecular level. As a summary, this paper provides the first insights in the rational design of ionic liquids with suitable properties for the solvation of B80.
除了碳同素异形体之外,其他纳米结构,如富勒烯B80,由于其潜在应用正吸引着越来越多的关注。基于富勒烯B80的新材料的使用仍处于初期阶段;然而,这些应用中的许多都需要在溶液中使用B80。本文报道了对B80与两种胆碱基离子液体之间相互作用机理进行的前所未有的密度泛函理论(DFT)分析,作为离子液体对富勒烯B80溶剂化作用的初步见解。对诸如结合能、电荷分布或分子间相互作用等性质的分析揭示了离子液体与富勒烯B80之间相互作用的主要特征。此外,对围绕富勒烯B80的六个离子对组成的体系进行优化,在分子水平上提供了有关第一溶剂化层的一些信息。总之,本文为合理设计具有适合B80溶剂化性质的离子液体提供了初步见解。